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The role of dilation and cementation in the formation of cataclasite in low temperature deformation of well cemented quartz-rich rocks

机译:膨胀和胶结作用在富含胶结石英岩的低温变形中催化裂隙形成中的作用

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An important textural component of cataclasites in quartz-rich rocks deformed at low temperatures is a fine-grained (<20 μm) matrix composed of anhedral quartz. As cataclasites form during shearing, this component would typically be interpreted to result from extreme grain size reduction through comminution. Tabular bands of fine-grained quartz that texturally resemble cataclasite found in faulted quartz arenites and other quartz-rich, well cemented sandstones have characteristics that are incompatible with a shearing origin. These characteristics include a lack of shear displacement and wall rock fragments, gradational contacts with the wall rock, and a fine-grained quartz fill that has a different cathodoluminescence, water content, oxygen isotope chemistry, and in some cases, mineralogy, than the wall rocks. Rather than being the result of cataclasis, the fine-grained quartz in these tabular bands was precipitated in a dilating fracture. In essence, these structures are veins. In fault zones, where cataclasite is well developed and shearing is unequivocal, the fine-grained quartz matrix representing up to 50% of the fault rock volume has characteristics similar to those in the tabular bands. We interpret these volumes to be in many cases a result of cement precipitation rather than as a product of comminution. If correct, then the brittle deformation of well cemented, quartz-rich rocks deformed at low temperatures involves much more dilation and cementation than previously recognized.
机译:在低温下变形的富含石英的岩石中,cataclasites的重要纹理成分是由无角石英组成的细粒度(<20μm)基质。由于在剪切过程中会形成分解长石,因此通常将此组分解释为是由于粉碎而导致的极小粒度减小。细晶状石英带状组织,在结构上类似于断层石英亚硝酸盐和其他富含石英的,胶结良好的砂岩中发现的加锡石,其特性与剪切起源不兼容。这些特征包括缺乏剪切位移和围岩碎屑,与围岩的渐变接触以及具有与壁不同的阴极发光,含水量,氧同位素化学以及在某些情况下矿物学的细粒石英填充物岩石。这些平板状带中的细粒石英不是扩张的结果,而是在扩张性裂缝中沉淀出来的。本质上,这些结构是静脉。在断裂带中,白云母发育良好,剪切作用不明显,占断裂岩体积的50%的细粒石英基体具有类似于板状带的特征。我们认为这些体积在许多情况下是水泥沉淀的结果,而不是粉碎的产物。如果正确的话,那么胶结良好的,富含石英的岩石在低温下的脆性变形将比以前认识到的膨胀和胶结多得多。

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